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Query: UMLS:C0020437 (hypercalcemia)
10,293 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

We have conducted a randomized crossover comparative trial of a single-dose course of disodium (3-amino-1-hydroxypropylidene) bisphosphonate pentahydrate (pamidronate) and plicamycin in 48 patients with a first occurrence of tumor-related hypercalcemia. All patients had hypercalcaemia-associated symptoms and serum-calcium levels (corrected for total protein) greater than or equal to 2.80 mmol/l. Pamidronate and plicamycin were given concurrently with rehydration immediately after diagnosis of hypercalcaemia was made. Both agents lowered serum calcium levels significantly within 1 week, with 88% of the evaluable patients in the pamidronate group and 45% of those in the plicamycin group achieving normocalcemia (p less than 0.01). In the patients who received pamidronate, the duration of normocalcemia was longer (p less than 0.05) and there was a significant decrease in serum creatinine (p less than 0.05). Vomiting occurred in 8 of 22 evaluable patients (36%) who received plicamycin, but in none of 25 evaluable patients who received pamidronate (P less than 0.01). Phlebitis occurred at the infusion site in more of the pamidronate-treated patients (P less than 0.05). Hypocalcemia, which occurred in 8 of 25 evaluable patients (32%) in the pamidronate group and in 1 of 22 of those (5%) in the plicamycin group, was either clinically asymptomatic or mild, except in one pamidronate-treated patient. Overall, pamidronate was found to be more effective and better tolerated than plicamycin, thereby confirming results of previous studies that showed pamidronate to be an effective, simple, and safe agent for the relief of the morbidity associated with tumor-related hypercalcemia.
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PMID:Plicamycin and pamidronate in symptomatic tumor-related hypercalcemia: a prospective randomized crossover trial. 145 38

Seventy-five female patients suffering from advanced breast cancer were treated with toilet mastectomy, radiotherapy and oophorectomy (if premenopausal) or tamoxifen therapy (if postmenopausal) as well as chemotherapy with cyclophosphamide, methotrexate, 5-fluorouracil and prednisone. The most common side-effects of combined chemohormonal therapy were gastro-intestinal (nausea, vomiting, rarely diarrhoea) in 43 patients (57.3%), followed by alopecia in 23 patients (30.6%), myelosuppression in 12 patients (16%), extravasation and thrombophlebitis in 7 patients (9.3%), and mucositis and oral erythema in 3 patients (4%). Side-effects of tamoxifen therapy such as vaginal discharge, bleeding, hot flushes were encountered in 10 patients (13.3%). Hypercalcaemia, tumour flare and hepatic, renal, cardiac, pulmonary and neurological toxicities were not encountered. Improvement of 10-30% in Karnofsky performance status was noted in responders while 20-30% deterioration was observed in non-responders. Combination therapy was mostly well tolerated, side-effects were few and toxicities were temporary and reversible.
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PMID:Toxicity and side-effects of combination chemohormonal therapy of advanced breast cancer. 158 18

We report our experience of the presentation and management of symptomatic hypercalcaemia in advanced lung cancer. Between 1981 and 1987, 55 patients required urgent admission due to rapid clinical deterioration accompanied by significant hypercalcaemia (greater than 2.75 mmol l-1). Forty patients (72%) had squamous cell cancer, five small cell, three large cell, two adenocarcinoma and five unclassified. Thirty-five had evidence of bony metastases. Symptoms were categorized for each patient on the basis of being either potentially attributable to hypercalcaemia or not. All patients were rehydrated but specific treatment schedules over the period varied [1981-1985: steroids, calcitonin, mithramycin; 1985-1987: aminohydroxypropylidene bisphosphonate (APD)]. Treatment resulted in a significant reduction in the prevalence of all systems except for pain and nausea/vomiting; the greatest effect being seen on central nervous system and renal tract symptoms (75 and 80% reduction respectively; P less than 0.005 pre- versus post-treatment). Overall, 45 patients (82%) had a biochemical response; serum calcium fell from 3.28 +/- 0.33 mmol l-1 (mean +/- SE) to a nadir of 2.54 +/- 0.36 mmol l-1 (P less than 0.001). Twenty-five (49%) patients were discharged home. We conclude that despite the poor life expectancy of this group of patients (median survival 42 days) treatment of hypercalcaemia is worthwhile as it results in a significant symptomatic improvement.
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PMID:Symptomatic hypercalcaemia in lung cancer. 183 17

A phase I multicenter evaluation of a novel antiestrogen, toremifene, was undertaken in postmenopausal women with various advanced difficult-to-treat malignancies. One hundred and seven women were treated at one of six dosage levels (10, 20, 40, 60, 200, or 400 mg/d orally) for at least 8 weeks. Weekly evaluations for toxicity were conducted. The most common side effects were nausea (31%), vomiting (12%), and hot flashes (29%). Five patients were removed from the study for possible adverse reactions: three patients experienced hypercalcemia; one experienced tremulousness, fatigue, and inability to think clearly; and one had vaginal bleeding. Twelve patients died while on study, 11 with disease progression and one with a pulmonary embolus. Sex hormone-binding globulin (SHBG) levels increased and there was a modest decline in serum antithrombin III levels. Four of 48 assessable patients had partial responses: three with breast cancer and one with endometrial cancer. Toremifene was generally well tolerated at the doses tested.
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PMID:Phase I study of toremifene in patients with advanced cancer. 183 8

Severe hypercalcemia is a medical emergency requiring urgent treatment. It most commonly is caused by malignant tumors, as in the case study, but can also be caused by advanced hyperparathyroidism or high serum levels of vitamin D. The patient described in the case study shows clinical evidence of volume contraction due to hypercalcemia-related anorexia and vomiting. His elevated serum concentrations of urea nitrogen and creatinine reflect intravascular volume depletion and hypercalcemia-induced reduction of renal perfusion. He is also likely to have irreversible renal damage as a result of nephrocalcinosis. His central nervous system depression is most likely a result of hypercalcemia, but other central nervous system disorders such as cerebral metastases should be considered. Appropriate treatment would include intravenous fluids to correct volume depletion, dilute extracellular fluid calcium, and promote renal calcium excretion. Before waiting for the effects of volume expansion, the first dose of an inhibitor of bone resorption should be given. The agent of choice now (this may change when second-generation bisphosphonates become available) is plicamycin. Etidronate is a reasonable second choice. Because both drugs require at least 48 hours before their hypocalcemic action is manifest, calcitonin could be used to accelerate the rate of decline of the serum calcium. As the patient becomes more alert, weight-bearing and ambulation should be encouraged. With this combination of therapeutic modalities, this patient's serum calcium level should be corrected within 3 to 5 days. Intermittent injections of mithramycin or etidronate could be given on an outpatient basis approximately once a week in order to maintain the serum calcium within the normal range. One of the most important aspects of treatment in hypercalcemic patients is eradication of the underlying disease, which usually calls for specific antitumor therapy, including chemotherapy, radiation therapy, or surgery. Most of the agents currently available for the correction of hypercalcemia have cumulative toxicities or are only transiently effective and, therefore, their use should be considered a temporizing measure until specific treatment directed at the primary disease takes effect.
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PMID:Management of severe hypercalcemia. 200 13

Toremifene is a triphenylethylene derivative structurally and pharmacologically similar to tamoxifen. This Phase I trial assessed the safety, pharmacokinetics, anti-estrogenic, and estrogenic effects of toremifene at six dose levels (10, 20, 40, 60, 200, and 400 mg/day). The most common side-effects associated with therapy included gastrointestinal (nausea/vomiting 43%), anti-estrogenic (hot flashes 29%), and CNS (dizziness/vertigo 12%). Three patients with bone metastases from breast cancer developed hypercalcemia. At doses greater than or equal to 40 mg/day a decline in LH and FSH occurred which was not statistically significant. At all doses tested SHBG rose during therapy. A dose dependent estrogenic blockade was seen on the vaginal epithelium following challenge with transdermal estradiol. Steady-state concentrations of toremifene were reached within 4 weeks, and at doses greater than or equal to 60 mg/day ranged from 879-3445 ng/ml. The half-life was found to be 5 days, and at three weeks following discontinuation of treatment concentrations greater than 24 ng/ml were detected. The N-desmethyl and 4-hydroxy metabolites achieved steady state levels within 4 weeks and had half-lives of 6 and 5 days respectively. Partial responses were seen in 4 patients, 3 with breast cancer treated at 200 mg/day and 1 with endometrial cancer treated at 400 mg/day.
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PMID:Phase I study of the tolerance and pharmacokinetics of toremifene in patients with cancer. 214 80

Idiopathic infantile hypercalcaemia is a rare state characterized by failure to thrive, anorexia, vomiting, constipation and psychomotor retardation. We report a case of an infant with this syndrome.
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PMID:[Idiopathic infantile hypercalcemia]. 225 89

Primary hypoadrenocorticism was diagnosed in ten young to middle-aged cats of mixed breeding. Five of the cats were male, and five were female. Historic signs included lethargy (n = 10), anorexia (n = 10), weight loss (n = 9), vomiting (n = 4), and polyuria (n = 3). Dehydration (n = 9), hypothermia (n = 8), prolonged capillary refill time (n = 5), weak pulse (n = 5), collapse (n = 3), and sinus bradycardia (n = 2) were found on physical examination. Results of initial laboratory tests revealed anemia (n = 3), absolute lymphocytosis (n = 2), absolute eosinophilia (n = 1), and azotemia and hyperphosphatemia (n = 10). Serum electrolyte changes included hyponatremia (n = 10), hyperkalemia (n = 9), hypochloremia (n = 9), and hypercalcemia (n = 1). The diagnosis of primary adrenocortical insufficiency was established on the basis of results of adrenocorticotropic hormone (ACTH) stimulation tests (n = 10) and endogenous plasma ACTH determinations (n = 7). Initial therapy for hypoadrenocorticism included intravenous administration of 0.9% saline and dexamethasone and intramuscular administration of desoxycorticosterone acetate in oil. Three cats were euthanatized shortly after diagnosis because of poor clinical response. Results of necropsy examination were unremarkable except for complete destruction of both adrenal cortices. Seven cats were treated chronically with oral prednisone or intramuscular methylprednisolone acetate for glucocorticoid supplementation and with oral fludrocortisone acetate or intramuscular injections of repository desoxycorticosterone pivalate for mineralocorticoid replacement. One cat died after 47 days of therapy from unknown causes; the other six cats are still alive and well after 3 to 70 months of treatment.
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PMID:Primary hypoadrenocorticism in ten cats. 246 93

A patient with hypercalcemia and newly diagnosed multiple myeloma developed acute pancreatitis. Other etiologic factors for pancreatitis were excluded. Hypercalcemia secondary to hyperparathyroidism is associated with acute pancreatitis. In English literature, only one other case has been published where the hypercalcemia of multiple myeloma may have caused pancreatitis. Pancreatitis should be considered in patients with hypercalcemia and multiple myeloma who develop nausea/vomiting, and abdominal pain.
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PMID:Acute pancreatitis in a case of multiple myeloma with hypercalcemia. 248 50

A 12-year-old girl was admitted to our hospital with signs of an acute abdomen with paralytic ileus. The previous and family history were without abnormalities. Abdominal pain and vomiting had started two days earlier. On palpation the swollen abdomen was painful and there was an increased tension in the left upper part. The clinical diagnosis of acute pancreatitis was confirmed by an increased serum level of lipase (4480 U/l). Clinical chemical investigations further revealed a permanent hypercalcemia in the range of 6.4 to 8.3 mval/l. This, together with concomitantly reduced levels of serum phosphate and a threefold increased level of parathyroid hormone (343 pg/ml, upper limit of reference = 100 pg/ml) were consistent with a hyperparathyroidism. In fact, sonography of the cervical organs revealed a solitary adenoma of the parathyroid glands. After surgery serum levels of calcium returned to normal. Hypercalcemia as a consequence of primary hyperparathyroidism has to be included in the differential diagnosis of acute pancreatitis in childhood.
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PMID:[Acute pancreatitis as an initial manifestation of hypercalcemia in primary hyperparathyroidism in childhood]. 265 77


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